Two-component signal transduction systems, comprised of histidine kinases and their response regulator substrates, are the predominant means by which bacteria sense and respond to extracellular signals. These systems allow cells to adapt to prevailing conditions by modifying cellular physiology, including initiating programs of gene expression, catalyzing reactions, or modifying protein–protein interactions. These signaling pathways have also been demonstrated to play a role in coordinating bacterial cell cycle progression and development. Here we report a system-level investigation of two-component pathways in the model organism Caulobacter crescentus. First, by a comprehensive deletion analysis we show that at least 39 of the 106 two-comp...
<div><p>Understanding the principles underlying the plasticity of signal transduction networks is fu...
Published onlineJournal ArticleResearch Support, Non-U.S. Gov'tSynthetic biology aims to design de n...
AbstractA genetic regulatory circuit recently described in the bacterium Caulobacter crescentus gene...
<div><p>Two-component signal transduction systems, comprised of histidine kinases and their response...
Two-component signal transduction systems, comprised of histidine kinases and their response regulat...
How bacteria control their shape and division was one of the first topics investigated with molecula...
How bacteria control their shape and division was one of the first topics investigated with molecula...
AbstractUnderstanding of the cell cycle control logic in Caulobacter has progressed to the point whe...
Bacteria must be able to respond to a multitude of unanticipated environmental insults in order to s...
Bacteria must be able to respond to a multitude of unanticipated environmental insults in order to s...
International audienceUnderstanding the principles underlying the plasticity of signal transduction ...
The conversion of environmental signals into cellular responses is a critically important process th...
International audienceUnderstanding the principles underlying the plasticity of signal transduction ...
International audienceUnderstanding the principles underlying the plasticity of signal transduction ...
International audienceUnderstanding the principles underlying the plasticity of signal transduction ...
<div><p>Understanding the principles underlying the plasticity of signal transduction networks is fu...
Published onlineJournal ArticleResearch Support, Non-U.S. Gov'tSynthetic biology aims to design de n...
AbstractA genetic regulatory circuit recently described in the bacterium Caulobacter crescentus gene...
<div><p>Two-component signal transduction systems, comprised of histidine kinases and their response...
Two-component signal transduction systems, comprised of histidine kinases and their response regulat...
How bacteria control their shape and division was one of the first topics investigated with molecula...
How bacteria control their shape and division was one of the first topics investigated with molecula...
AbstractUnderstanding of the cell cycle control logic in Caulobacter has progressed to the point whe...
Bacteria must be able to respond to a multitude of unanticipated environmental insults in order to s...
Bacteria must be able to respond to a multitude of unanticipated environmental insults in order to s...
International audienceUnderstanding the principles underlying the plasticity of signal transduction ...
The conversion of environmental signals into cellular responses is a critically important process th...
International audienceUnderstanding the principles underlying the plasticity of signal transduction ...
International audienceUnderstanding the principles underlying the plasticity of signal transduction ...
International audienceUnderstanding the principles underlying the plasticity of signal transduction ...
<div><p>Understanding the principles underlying the plasticity of signal transduction networks is fu...
Published onlineJournal ArticleResearch Support, Non-U.S. Gov'tSynthetic biology aims to design de n...
AbstractA genetic regulatory circuit recently described in the bacterium Caulobacter crescentus gene...